Detection device and detection equipment

By using adsorption components and mounting assemblies with different adsorption areas in the detection device, the problem of not being able to detect loads on curved parts in the prior art is solved, and accurate and stable load detection of curved parts is achieved.

CN223581354UActive Publication Date: 2025-11-21SHENZHEN HELLO TECH ENERGY CO LTD
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Patent Information

Application Number
CN202520008164.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-02
Publication Date
2025-11-21
Estimated Expiration
2035-01-02

AI Technical Summary

Technical Problem

Existing testing devices cannot perform load testing on curved surface components, especially since the adsorption plate can only be adsorbed onto flat plates and cannot be adapted to curved surface structures.

Method used

A detection device was designed, comprising multiple adsorption elements with different adsorption areas and an installation assembly. The first adsorption element with a smaller adsorption area is adsorbed onto the connecting section of the curved component. Combined with the installation assembly and adsorption plate with greater rigidity, the load detection of the curved component is realized.

Benefits of technology

This technology enables effective load detection of curved surface components, improving the accuracy and stability of the detection and reducing damage to the curved surface components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a detection device and detection equipment, the detection device is used for carrying out load detection on a curved surface component, the curved surface component is provided with at least one wave crest section, at least one wave trough section and at least one connecting section, the connecting section is used for connecting the adjacent wave crest section and wave trough section, the detection device comprises a plurality of first adsorption pieces and a plurality of second adsorption pieces, the plurality of first adsorption parts can be adsorbed to the connecting section; the mounting assembly can be detachably connected with the first adsorption part, the mounting assembly is provided with an adsorption surface, and at least one part of the adsorption surface is a plane; the second adsorption part can be adsorbed on the adsorption surface, and the adsorption area of the first adsorption part is smaller than that of the second adsorption part. Therefore, the first adsorption part with a smaller adsorption area can be adsorbed on the curved surface part, then the mounting assembly is connected with the first adsorption part, and the second adsorption part with a larger adsorption area is adsorbed on the plane of the mounting assembly, so that the load resistance related test of the curved surface part is realized.
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Description

TECHNICAL FIELD

[0001] The utility model relates to load testing equipment technical field, specifically, relate to a detection device and detection equipment. BACKGROUND

[0002] The detection device in the prior art, wherein the adsorption disc can only be adsorbed on the plane plate, so that the curved surface component cannot be subjected to load detection. SUMMARY

[0003] The utility model discloses at least one of the technical problems in the prior art or related art.

[0004] Therefore, a first object of the utility model is to provide a detection device.

[0005] A second object of the utility model is to provide a detection device.

[0006] To achieve the above at least one object, according to the first aspect of the utility model, a detection device is provided, the detection device is used to carry out load detection on a curved surface component, the curved surface component has at least one wave crest section, at least one wave trough section and at least one connecting section, the wave crest section is arranged adjacent to the wave trough section, and the connecting section is used to connect adjacent wave crest sections and wave trough sections, the detection device comprises: a plurality of first suction members, the plurality of first suction members can be adsorbed on the connecting section;Mounting assembly can be detachably connected with the first suction member, the mounting assembly has an adsorption surface, and at least a part of the adsorption surface is a plane;At least one second suction member, the second suction member can be adsorbed on the adsorption surface, and the adsorption area of the first suction member is less than the adsorption area of the second suction member.

[0007] The detection device provided in the application can be used for load detection on a curved surface component. The curved surface component has at least one wave crest section, at least one wave trough section and at least one connecting section, wherein the wave crest section is an arched structure, the wave trough section is a concave structure, the wave crest section is arranged adjacent to the wave trough section, and when the number of wave crest sections and wave trough sections is multiple, the multiple wave crest sections and the multiple wave trough sections are arranged in sequence with intervals. The connecting section is located between the wave crest section and the wave trough section, and is used to connect adjacent wave crest sections and wave trough sections. Understandably, compared with the wave crest section and the wave trough section, the surface of the connecting section is relatively flat.

[0008] Further, the detection device comprises a plurality of first suction members, a mounting assembly and at least one second suction member, wherein the suction area of the first suction member is smaller than that of the second suction member, the first suction member can be adsorbed on the curved surface component, the mounting assembly can be connected with the first suction member, and the second suction member can be adsorbed on the mounting assembly to realize load detection of the curved surface component. Specifically, the surface of the connecting section in the curved surface component is relatively flat relative to the surfaces of the wave crest section and the wave trough section, and the first suction member can be adsorbed on the surface of the connecting section. Understandably, since the suction area of the first suction member is smaller than that of the second suction member, the first suction member is more easily adsorbed on the curved surface component than the second suction member.

[0009] Further, the mounting assembly is detachably connected with the first suction member. When it is necessary to detect the load of the curved surface component by the detection device, after the plurality of first suction members are adsorbed on the connecting section, the user connects the mounting assembly with the plurality of first suction members, and then adsorbs the second suction member on the mounting assembly to realize load detection of the curved surface component. After the load detection of the curved surface component is completed, the user can detach the mounting assembly from the plurality of first suction members.

[0010] Further, in order to enable the second suction member to be adsorbed on the mounting assembly, the mounting assembly is provided with an adsorption surface, at least a part of the adsorption surface is a plane, so that the second suction member can be adsorbed on the adsorption surface. The second suction member can be connected with other structures in the detection equipment, the load borne by the curved surface component can be transmitted to the second suction member through the first suction member and the mounting assembly, and the detection equipment detects the load of the curved surface component through the second suction member, so that the related load data of the curved surface component can be measured.

[0011] By providing the first suction member and the second suction member with different suction areas in the detection device, the first suction member with a smaller suction area can be adsorbed on the curved surface component, then the mounting assembly is connected with the first suction member, and the second suction member with a larger suction area is adsorbed on the plane of the mounting assembly to realize the load-related test of the curved surface component.

[0012] According to the above detection device of the utility model, the following distinguished technical features can also be had:

[0013] In some technical solutions, optionally, the mounting assembly comprises: at least one mounting piece, which is detachably connected with the first suction member; an adsorption plate, wherein the adsorption surface is arranged on the adsorption plate; and a fixing assembly, which is used to connect the mounting piece with the adsorption plate.

[0014] In the technical solution, the structure of the mounting assembly is limited. The mounting assembly comprises an adsorption plate, a fixing assembly and at least one mounting piece, wherein the mounting piece is used to be connected with the first adsorption member, the adsorption plate is used to be connected with the second adsorption member, and the fixing assembly is used to connect the mounting piece with the adsorption plate. Specifically, the mounting piece is detachably connected with the first adsorption member. When the curved surface component needs to be detected, the first mounting piece is connected with the first adsorption member. When the detection of the curved surface component is completed, the mounting piece can be detached from the first adsorption member. The adsorption surface is arranged on the adsorption plate, and the adsorption surface is located on the side of the adsorption plate away from the mounting piece. The second adsorption member can be adsorbed on the adsorption surface of the adsorption plate. The mounting piece and the adsorption plate are made of materials with large rigidity, so as to reduce the deformation of the mounting piece and the adsorption plate under stress and improve the detection accuracy. Further, the fixing assembly is used to connect the mounting piece with the adsorption plate, so that the load borne by the mounting piece can be transmitted to the second adsorption member through the adsorption plate, and the load resistance test of the curved surface component is realized.

[0015] In some technical solutions, optionally, any first adsorption member comprises an adsorption part and a handle part. The adsorption part can be adsorbed on the connecting segment. The handle part is connected to the adsorption part, and the mounting piece can pass through the handle part. In the case that the first adsorption member is connected with the mounting assembly, part of the handle part is located between the mounting piece and the adsorption plate. The fixing assembly can adjust the distance between the mounting piece and the adsorption plate, so that the mounting piece and the adsorption plate clamp the handle part.

[0016] In the technical solution, the structure of the first adsorption member is limited. Any first adsorption member comprises an adsorption part and a handle part, wherein the adsorption part is used to be adsorbed on the curved surface component, and the handle part is used to be connected with the mounting piece. Specifically, the handle part is connected with the adsorption part. The adsorption part can be adsorbed on the connecting segment of the curved surface component. The handle part has a structure close to a ring. The mounting piece has a rod structure. The mounting piece can pass through the handle part. In this way, the detachable connection between the first adsorption member and the mounting piece can be realized.

[0017] Further, when the first adsorption member is connected with the mounting assembly, the mounting piece is first passed through the handle part of the first adsorption member, and then the adsorption plate is covered on the mounting piece. At this time, part of the handle part is located between the mounting piece and the adsorption plate. Then, the fixing assembly is used to connect the mounting piece with the adsorption plate, so as to complete the connection between the mounting assembly and the first adsorption member.

[0018] Further, the fixing assembly can adjust the distance between the mounting piece and the adsorption plate. When the mounting piece and the adsorption plate are connected through the fixing assembly, the distance between the mounting piece and the adsorption plate is adjusted through the fixing assembly, so that the mounting piece and the adsorption plate clamp the handle part, prevent the first adsorption member from swinging, and improve the accuracy of the load detection of the curved surface component.

[0019] In some embodiments, the number of the fixing assemblies is at least two, and the at least two fixing assemblies are respectively arranged at two ends of the mounting member and the adsorption plate. Each of the fixing assemblies comprises a fixing part having a mounting slot into which the end of the mounting member and the end of the adsorption plate are inserted, and a plurality of locking members movably arranged on the fixing part, the locking members penetrating through the slot wall of the mounting slot and abutting against the adsorption plate, and the locking members are capable of moving relative to the fixing part along the height direction of the fixing part to adjust the distance between the mounting member and the adsorption plate.

[0020] In the embodiments, the structure of the fixing assembly is limited. The number of the fixing assemblies is at least two, and the at least two fixing assemblies are respectively arranged at two ends of the mounting member and the adsorption plate. In this way, on the one hand, the reliability of the connection between the adsorption plate and the mounting member is improved, and on the other hand, the two ends of the adsorption plate and the mounting member are stressed to improve the clamping force of the adsorption plate and the mounting member on the handle part.

[0021] Further, each of the fixing assemblies comprises a fixing part and a plurality of locking members. The fixing part has a mounting slot into which the end of the mounting member and the end of the adsorption plate are inserted, and the locking members penetrate through the slot wall of the mounting slot and abut against the adsorption plate. The locking members are capable of moving up and down along the height direction of the fixing part, so that the adsorption plate is moved by the locking members, and the distance between the mounting member and the adsorption plate is adjusted by the locking members. Specifically, when the mounting assembly is connected with the first adsorption member, the mounting member is first penetrated through the handle part of the first adsorption member, and then the adsorption plate is covered above the mounting rack. Then, the ends of the adsorption plate and the mounting member are inserted into the mounting slot of the fixing part, the locking members penetrate through the slot wall of the mounting slot and abut against the adsorption plate, the height of the locking members is adjusted, the adsorption plate is moved towards the mounting member by the locking members, and then the adsorption plate and the mounting member can clamp the handle part of the first adsorption member.

[0022] By arranging the fixing part and the locking members in the fixing assembly, the distance between the adsorption plate and the mounting rack can be adjusted by adjusting the position of the locking members, and then the adsorption plate and the mounting member can clamp the first adsorption member to prevent the first adsorption member from swinging and improve the accuracy of the load detection of the curved part.

[0023] In some embodiments, the locking members are screws, and the fixing part is provided with threaded holes matched with the locking members, and the locking members penetrate through the threaded holes and abut against the adsorption plate.

[0024] In the technical solution, the locking member is a screw, the fixing portion is provided with a threaded hole matched with the locking member, the locking member can rotate in the threaded hole to move the locking member along the height direction of the fixing member relative to the fixing member, the locking member abuts against the adsorption plate through the threaded hole, and the locking member pushes the adsorption plate to move when the locking member moves relative to the fixing member, so that the distance between the adsorption plate and the mounting member is adjusted, and then the adsorption plate and the mounting member can clamp the first adsorption member.

[0025] By designing the locking member as a screw, the distance between the adsorption plate and the mounting member can be adjusted by only rotating the locking member, and then the adsorption plate and the mounting member can clamp the first adsorption member.

[0026] In some technical solutions, optionally, a plurality of first adsorption members can be arranged in sequence along the length direction of the curved surface component to form a first adsorption member group, when the number of the first adsorption member groups and the number of the mounting members are both plural, the plurality of first adsorption member groups can be arranged in sequence along the width direction of the curved surface component, and the plurality of mounting members are arranged in one-to-one correspondence with the plurality of first adsorption member groups, and any mounting member passes through the plurality of first adsorption members in the corresponding first adsorption member group.

[0027] In the technical solution, the arrangement of the plurality of first adsorption members is limited. The plurality of first adsorption members can be arranged in sequence along the length direction of the curved surface component to form a first adsorption member group, and the plurality of first adsorption members in each adsorption member group are connected to the same mounting member. In this way, the load of the curved surface component can be uniformly applied to each position of the mounting member.

[0028] Further, when the number of the first adsorption member groups and the number of the mounting members are both plural, the plurality of first adsorption member groups are arranged in sequence along the width direction of the curved surface component, and the plurality of mounting members are arranged in one-to-one correspondence with the plurality of first adsorption member groups, that is, any mounting member passes through the plurality of first adsorption members in the corresponding first adsorption member group, and the plurality of mounting members connected to the first adsorption members are arranged in sequence along the width direction of the curved surface component. In this way, the load of the curved surface component can be more uniformly applied to the plurality of mounting members, further improving the accuracy of detection, and also improving the stability of the curved surface component.

[0029] In some technical solutions, optionally, the detection device further comprises a support member, the support member can be installed on the side of the curved surface component away from the first adsorption member, and the support member is used to support the curved surface component.

[0030] In the technical solution, the structure of the detection device is further limited. The detection device further comprises a support member, and the support member is used for supporting the curved surface member. Understandably, the surface of the curved surface member is a curved surface, and it is difficult to apply a load on the curved surface. In order to reduce the difficulty of applying a load on the curved surface member, the support member is further arranged in the detection device. Specifically, the support member can be installed on the side of the curved surface member away from the first suction member, the support member can support the curved surface member, and the external load can be applied to the support member, so that the load can act on the curved surface member through the support member. In this way, the difficulty of applying a load on the curved surface member can be reduced. Moreover, since the support member is arranged at the bottom of the curved surface member, the curved surface member can be further supported by the support member, the contact between the curved surface member and other equipment is reduced, and the damage to the curved surface member is reduced.

[0031] In some technical solutions, optionally, the support member can be connected to the valley section.

[0032] In the technical solution, the connection position of the support member and the curved surface member is limited. The support member can be connected to the valley section. Understandably, the valley section of the curved surface member is a concave structure, that is, the valley section constitutes the bottom of the curved surface member. By connecting the support member to the valley section, the bottom of the curved surface member can be supported by the support member, and the support member is easy to be connected to the curved surface member.

[0033] In one possible technical solution, the support member is connected to the curved surface member by screws, and the number of support members is two. The two support members are respectively close to the two ends of the curved surface member along the width direction of the curved surface member.

[0034] In some technical solutions, optionally, when the number of second suction members is multiple, the multiple second suction members are arranged symmetrically with respect to the axis of the adsorption plate.

[0035] In the technical solution, the arrangement of the second suction member is limited. The number of second suction members can be one or multiple. When the number of second suction members is multiple, the multiple second suction members are arranged symmetrically with respect to the axis of the adsorption plate. In this way, on the one hand, the overall force of the curved surface member and the mounting member can be balanced and stable, and on the other hand, the load of the curved surface member can be uniformly transmitted to the multiple second suction members, thereby improving the accuracy of load detection.

[0036] Further, when the number of second suction members is one, the second suction member is arranged on the axis of the adsorption plate, and optionally, the second suction member is arranged at the center of the adsorption plate.

[0037] The second aspect of the utility model further provides a detection device which comprises the detection device provided by the first aspect of the utility model.

[0038] The detection device provided in the second aspect of the utility model has all the beneficial effects of the detection device.

[0039] The additional aspects and advantages of the utility model will become apparent in the following description, or be appreciated through the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS

[0040] The above and / or additional aspects and advantages of the utility model will become apparent and more readily appreciated from the following description of the embodiments, with reference to the following drawings, in which:

[0041] Figure 1 Fig. 1 shows a structure schematic view of a mounting assembly of one embodiment of the utility model;

[0042] Figure 2 Fig. 2 shows a sectional view of the A-A section in Fig. 1; Figure 1

[0043] Fig. 3 shows a sectional view of the B-B section in Fig. 1; Figure 3 Figure 1 Fig. 4 shows one of structure schematic views of a first suction accessory being adsorbed on a curved surface component of one embodiment of the utility model;

[0044] Figure 4 Fig. 5 shows the other of structure schematic views of the first suction accessory being adsorbed on the curved surface component of one embodiment of the utility model;

[0045] Figure 5 Fig. 6 shows a structure schematic view of a mounting piece being connected to the first suction accessory of one embodiment of the utility model;

[0046] Figure 6 Fig. 7 shows a structure schematic view of a mounting assembly being connected to the first suction accessory of one embodiment of the utility model;

[0047] Figure 7 Fig. 8 shows a structure schematic view of a detection device being installed on a curved surface component of one embodiment of the utility model.

[0048] Figure 8 Fig. 9 shows a structure schematic view of a detection device being installed on a curved surface component of one embodiment of the utility model.

[0049] Fig. 10 shows a structure schematic view of a detection device being installed on a curved surface component of one embodiment of the utility model. Figures 1 to 8 Fig. 11 shows a structure schematic view of a detection device being installed on a curved surface component of one embodiment of the utility model.

[0050] 100 detection device, 110 first suction accessory, 111 adsorption part, 112 handle part, 120 mounting assembly, 121 mounting piece, 122 adsorption plate, 123 adsorption surface, 124 fixing assembly, 125 fixing part, 126 mounting groove, 127 locking piece, 130 second suction accessory, 140 supporting piece, 200 curved surface component, 210 wave crest section, 220 wave trough section, 230 connecting section.​ DETAILED DESCRIPTION

[0051] In order to enable one skilled in the art to better understand the above-mentioned purposes, features and advantages of the present application, the present application will be further described in detail below with reference to the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0052] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, however, the present application can also be implemented in other ways different from those described herein, therefore, the scope of protection of the present application is not limited by the specific embodiments disclosed below.

[0053] The following refers to Figures 1 to 8 The detection device 100 and the detection equipment provided according to some embodiments of the present application are described.

[0054] In an embodiment according to the present application, as shown in Figure 4 、 Figure 5 、 Figure 7 and Figure 8 The present application provides a detection device 100, which is used for load detection of a curved surface component 200, the curved surface component 200 has at least one wave crest section 210, at least one wave trough section 220 and at least one connecting section 230, the wave crest section 210 is arranged adjacent to the wave trough section 220, and the connecting section 230 is used for connecting the adjacent wave crest section 210 and wave trough section 220, the detection device 100 comprises: a plurality of first suction members 110, the plurality of first suction members 110 can be adsorbed on the connecting section 230; a mounting assembly 120, which can be detachably connected with the first suction members 110, the mounting assembly 120 has a suction surface 123, at least a part of the suction surface 123 is a plane; at least one second suction member 130, the second suction member 130 can be adsorbed on the suction surface 123, and the adsorption area of the first suction member 110 is smaller than the adsorption area of the second suction member 130.

[0055] The detection device 100 provided in the present application can be used for load detection of the curved component 200. The curved component 200 has at least one peak section 210, at least one valley section 220 and at least one connecting section 230. The peak section 210 is an arched structure, the valley section 220 is a concave structure, the peak section 210 is arranged adjacent to the valley section 220, and when the number of the peak section 210 and the valley section 220 is multiple, the multiple peak sections 210 and the multiple valley sections 220 are arranged in sequence with intervals. The connecting section 230 is located between the peak section 210 and the valley section 220, and the connecting section 230 is used for connecting the adjacent peak section 210 and the valley section 220. Understandably, compared with the peak section 210 and the valley section 220, the surface of the connecting section 230 is relatively flat.

[0056] Further, the detection device 100 comprises multiple first suction members 110, a mounting assembly 120 and at least one second suction member 130. The suction area of the first suction member 110 is smaller than the suction area of the second suction member 130. The first suction member 110 can be adsorbed on the curved component 200. The mounting assembly 120 can be connected with the first suction member 110. The second suction member 130 can be adsorbed on the mounting assembly 120, so as to realize load detection of the curved component 200. Specifically, the surface of the connecting section 230 in the curved component 200 is relatively flat compared with the surface of the peak section 210 and the valley section 220. The first suction member 110 can be adsorbed on the surface of the connecting section 230. Understandably, since the suction area of the first suction member 110 is smaller than the suction area of the second suction member 130, compared with the second suction member 130, the first suction member 110 is more easily adsorbed on the curved component 200.

[0057] Further, the mounting assembly 120 is detachably connected with the first suction member 110. When it is needed to detect the load of the curved component 200 by using the detection device 100, after the multiple first suction members 110 are adsorbed on the connecting section 230, the user connects the mounting assembly 120 with the multiple first suction members 110, and then adsorbs the second suction member 130 on the mounting assembly 120, so as to realize load detection of the curved component 200. After the load detection of the curved component 200 is completed, the user can detach the mounting assembly 120 from the multiple first suction members 110.

[0058] Further, in order to enable the second suction member 130 to be adsorbed to the mounting assembly 120, the mounting assembly 120 is provided with an adsorption surface 123, at least a part of the adsorption surface 123 is a plane, thus, the second suction member 130 can be adsorbed to the adsorption surface 123 conveniently. The second suction member 130 can be connected to other structures in the detection device, the load borne by the curved surface component 200 can be transmitted to the second suction member 130 through the first suction member 110 and the mounting assembly 120, and the detection device detects the load of the curved surface component 200 through the second suction member 130, so that the relevant load data of the curved surface component 200 can be measured.

[0059] By setting the first suction member 110 and the second suction member 130 with different adsorption areas in the detection device 100, the first suction member 110 with a smaller adsorption area can be adsorbed to the curved surface component 200, then the mounting assembly 120 is connected to the first suction member 110, and the second suction member 130 with a larger adsorption area is adsorbed to the plane of the mounting assembly 120, so that the load related test of the curved surface component 200 can be realized.

[0060] In some embodiments, optionally, as shown in Figure 1 , Figure 2 , Figure 3 , Figure 6 and Figure 7 , the mounting assembly 120 comprises at least one mounting piece 121, which is detachably connected to the first suction member 110; an adsorption plate 122, the adsorption surface 123 is arranged on the adsorption plate 122; a fixing assembly 124, which is used for connecting the mounting piece 121 and the adsorption plate 122.

[0061] In this embodiment, the structure of the mounting assembly 120 is defined. The mounting assembly 120 includes an adsorption plate 122, a fixing assembly 124, and at least one mounting piece 121, wherein the mounting piece 121 is used to be connected with the first adsorption member 110, the adsorption plate 122 is used to be connected with the second adsorption member 130, and the fixing assembly 124 is used to connect the mounting piece 121 with the adsorption plate 122. Specifically, the mounting piece 121 is detachably connected with the first adsorption member 110, the first mounting piece 121 is connected with the first adsorption member 110 when the curved surface component 200 needs to be detected, and the mounting piece 121 can be detached from the first adsorption member 110 when the detection of the curved surface component 200 is completed. An adsorption surface 123 is arranged on the adsorption plate 122, and the adsorption surface 123 is located on the side of the adsorption plate 122 away from the mounting piece 121. The second adsorption member 130 can be adsorbed on the adsorption surface 123 of the adsorption plate 122. The mounting piece 121 and the adsorption plate 122 are both made of a material with high rigidity, so as to reduce the deformation of the mounting piece 121 and the adsorption plate 122 when they are subjected to force, and improve the accuracy of detection. Further, the fixing assembly 124 is used to connect the mounting piece 121 with the adsorption plate 122, so that the load borne by the mounting piece 121 can be transmitted to the second adsorption member 130 through the adsorption plate 122, and the load resistance test of the curved surface component 200 can be realized.

[0062] In some embodiments, as shown in Figure 4 、 Figure 5 、 Figure 6 and Figure 7 , any first adsorption member 110 includes an adsorption part 111 and a handle part 112, wherein the adsorption part 111 is used to be adsorbed on the connecting section 230, and the handle part 112 is connected with the adsorption part 111. The mounting piece 121 can pass through the handle part 112. In the case where the first adsorption member 110 is connected with the mounting assembly 120, part of the handle part 112 is located between the mounting piece 121 and the adsorption plate 122. The fixing assembly 124 can adjust the distance between the mounting piece 121 and the adsorption plate 122, so that the mounting piece 121 and the adsorption plate 122 can clamp the handle part 112.

[0063] In this embodiment, the structure of the first adsorption member 110 is defined. Any first adsorption member 110 includes an adsorption part 111 and a handle part 112, wherein the adsorption part 111 is used to be adsorbed on the curved surface component 200, and the handle part 112 is used to be connected with the mounting piece 121. Specifically, the handle part 112 is connected with the adsorption part 111, the adsorption part 111 can be adsorbed on the connecting section 230 of the curved surface component 200, the handle part 112 has a structure close to a ring, and the mounting piece 121 has a rod structure. The mounting piece 121 can pass through the handle part 112, so that the detachable connection between the first adsorption member 110 and the mounting piece 121 can be realized.

[0064] Further, when connecting the first suction accessory 110 with the mounting assembly 120, the mounting member 121 is first inserted through the handle portion 112 of the first suction accessory 110, and then the suction plate 122 is covered on the mounting member 121, at this time, a part of the handle portion 112 is located between the mounting member 121 and the suction plate 122, and then the mounting member 121 and the suction plate 122 are connected through the fixing assembly 124 to complete the connection of the mounting assembly 120 and the first suction accessory 110.

[0065] Further, the fixing assembly 124 can adjust the distance between the mounting member 121 and the suction plate 122, when connecting the mounting member 121 and the suction plate 122 through the fixing assembly 124, the distance between the mounting member 121 and the suction plate 122 is adjusted through the fixing assembly 124, so that the mounting member 121 and the suction plate 122 clamp the handle portion 112, prevent the first suction accessory 110 from swinging, and improve the accuracy of the load detection of the curved surface component 200.

[0066] In some embodiments, as shown in Figure 1 、 Figure 2 、 Figure 3 、 Figure 7 and Figure 8 , the number of fixing assemblies 124 is at least two, and the at least two fixing assemblies 124 are respectively installed at the two ends of the suction plate 122 and the mounting member 121, and any one fixing assembly 124 comprises: a fixing portion 125 having a mounting slot 126, the ends of the mounting member 121 and the suction plate 122 are inserted into the mounting slot 126; a plurality of locking members 127 movably installed on the fixing portion 125, the locking members 127 pass through the slot wall of the mounting slot 126 and abut against the suction plate 122, and the locking members 127 can move relative to the fixing portion 125 along the height direction of the fixing portion 125 to adjust the distance between the mounting member 121 and the suction plate 122.

[0067] In this embodiment, the structure of the fixing assembly 124 is limited. The number of fixing assemblies 124 is at least two, and the at least two fixing assemblies 124 are respectively installed at the two ends of the suction plate 122 and the mounting member 121, so that on the one hand, the reliability of the connection of the suction plate 122 and the mounting member 121 can be improved, and on the other hand, the two ends of the suction plate 122 and the mounting member 121 can be stressed to improve the clamping force of the suction plate 122 and the mounting member 121 on the handle portion 112.

[0068] Further, any one of the fixing assemblies 124 comprises a fixing part 125 and a plurality of locking members 127. The fixing part 125 has a mounting groove 126 into which the end of the mounting member 121 and the end of the adsorption plate 122 are inserted, and the locking members 127 abut against the adsorption plate 122 through the groove wall of the mounting groove 126. The locking members 127 can move up and down along the height direction of the fixing part 125, so that the adsorption plate 122 can be moved by pushing it through the locking members 127, and the distance between the mounting member 121 and the adsorption plate 122 can be adjusted by the locking members 127. Specifically, when connecting the mounting assembly 120 with the first adsorption member 110, the mounting member 121 is first inserted through the handle part 112 of the first adsorption member 110, and then the adsorption plate 122 is covered above the mounting rack. After that, the end of the adsorption plate 122 and the mounting member 121 are inserted into the mounting groove 126 of the fixing part 125, the locking members 127 abut against the adsorption plate 122 through the groove wall of the mounting groove 126, the height of the locking members 127 is adjusted, the adsorption plate 122 is pushed by the locking members 127 to move towards the mounting member 121, and then the adsorption plate 122 and the mounting member 121 can clamp the handle part 112 of the first adsorption member 110.

[0069] By arranging the fixing part 125 and the locking members 127 in the fixing assembly 124, the distance between the adsorption plate 122 and the mounting rack can be adjusted by adjusting the position of the locking members 127, and then the adsorption plate 122 and the mounting member 121 can clamp the first adsorption member 110, so as to prevent the first adsorption member 110 from swinging and improve the accuracy of the load detection of the curved part 200.

[0070] In some embodiments, the locking members 127 are screws, and the fixing part 125 is provided with threaded holes matched with the locking members 127, and the locking members 127 abut against the adsorption plate 122 through the threaded holes.

[0071] In this embodiment, the locking members 127 and the fixing part 125 are limited. Specifically, the locking members 127 are screws, the fixing part 125 is provided with threaded holes matched with the locking members 127, the locking members 127 can rotate in the threaded holes to move along the height direction of the fixing part relative to the fixing part, the locking members 127 abut against the adsorption plate 122 through the threaded holes, and when the locking members 127 move relative to the fixing part, the adsorption plate 122 is pushed by the locking members 127 to move, so as to adjust the distance between the adsorption plate 122 and the mounting member 121, and then the adsorption plate 122 and the mounting member 121 can clamp the first adsorption member 110.

[0072] By designing the locking members 127 as screws, the distance between the adsorption plate 122 and the mounting member 121 can be adjusted only by rotating the locking members 127, and then the adsorption plate 122 and the mounting member 121 can clamp the first adsorption member 110.

[0073] In some embodiments, as shown in Figure 4 and Figure 6 , a plurality of first suction members 110 can be arranged along the length direction of the curved component 200 to form a first suction member group. When the number of the first suction member group and the number of the mounting member 121 are both plural, the plurality of first suction member groups can be arranged along the width direction of the curved component 200, and the plurality of mounting members 121 are arranged one-to-one corresponding to the plurality of first suction member groups, that is, any mounting member 121 passes through the plurality of first suction members 110 in the corresponding first suction member group.

[0074] In this embodiment, the arrangement of the plurality of first suction members 110 is limited. The plurality of first suction members 110 can be arranged along the length direction of the curved component 200 to form a first suction member group, and the plurality of first suction members 110 in each suction member group are connected to the same mounting member 121. In this way, the load of the curved component 200 can be evenly applied to each position of the mounting member 121.

[0075] Further, when the number of the first suction member group and the number of the mounting member 121 are both plural, the plurality of first suction member groups are arranged along the width direction of the curved component 200, and the plurality of mounting members 121 are arranged one-to-one corresponding to the plurality of first suction member groups, that is, any mounting member 121 passes through the plurality of first suction members 110 in the corresponding first suction member group. The plurality of mounting members 121 connected to the first suction members 110 are arranged along the width direction of the curved component 200. In this way, the load of the curved component 200 can be more evenly applied to the plurality of mounting members 121, further improving the accuracy of detection, and also improving the stability of the curved component 200.

[0076] In some embodiments, as shown in Figure 4 and Figure 5 , the detection device 100 further comprises a support member 140, which can be installed on the side of the curved component 200 away from the first suction member 110, and the support member 140 is used to support the curved component 200.

[0077] In this embodiment, the structure of the detection device 100 is further limited. The detection device 100 further comprises a support 140 for supporting the curved surface component 200. Understandably, the surface of the curved surface component 200 is curved, and it is difficult to apply a load on the curved surface. In order to reduce the difficulty of applying a load on the curved surface component 200, the support 140 is further provided in the detection device 100. Specifically, the support 140 can be installed on the side of the curved surface component 200 away from the first suction member 110. The support 140 can support the curved surface component 200, and an external load can be applied to the support 140, so that the load can act on the curved surface component 200 through the support 140. In this way, the difficulty of applying a load on the curved surface component 200 can be reduced. Moreover, since the support 140 is arranged at the bottom of the curved surface component 200, the curved surface component 200 can also be supported by the support 140, reducing the contact between the curved surface component 200 and other equipment and reducing the damage to the curved surface component 200.

[0078] In some embodiments, as shown in Figure 4 and Figure 5 optionally, the support 140 can be connected to the trough section 220.

[0079] In this embodiment, the connection position of the support 140 and the curved surface component 200 is limited. The support 140 can be connected to the trough section 220. Understandably, the trough section 220 of the curved surface component 200 is a concave structure, that is, the trough section 220 constitutes the bottom of the curved surface component 200. By connecting the support 140 to the trough section 220, the bottom of the curved surface component 200 can be supported by the support, and the support 140 is easy to connect to the curved surface component 200.

[0080] In one possible embodiment, the support 140 is connected to the curved surface component 200 by screws, and the number of supports 140 is two. The two supports 140 are respectively close to the two ends of the curved surface component 200 along the width direction of the curved surface component 200.

[0081] In some embodiments, optionally, when the number of second suction members 130 is multiple, the multiple second suction members 130 are arranged symmetrically with respect to the axis of the suction plate 122.

[0082] In the embodiment, the arrangement of the second suction accessory 130 is limited. The number of the second suction accessory 130 can be one or multiple, and in the case of multiple second suction accessories 130, the multiple second suction accessories 130 are symmetrically arranged relative to the axis of the suction plate 122. In this way, on the one hand, the curved surface component 200 and the mounting 121 can be balanced and stable as a whole, and on the other hand, the load of the curved surface component 200 can be evenly transmitted to the multiple second suction accessories 130, thereby improving the accuracy of load detection.

[0083] Further, in the case of one second suction accessory 130, the second suction accessory 130 is arranged on the axis of the suction plate 122, and optionally, the second suction accessory 130 is arranged at the center of the suction plate 122.

[0084] The second aspect of the utility model further provides a detection device, which comprises the detection device 100 provided by the first aspect of the utility model.

[0085] The detection device provided by the second aspect of the utility model has all the beneficial effects of the detection device 100.

[0086] In a possible embodiment, the application provides a detection device 100 for load detection of a curved surface plate (i.e. the curved surface component 200). First, a plurality of small suction cups (i.e. the first suction accessory 110) are attached to the junction (i.e. the connecting segment 230) between the wave crest (i.e. the wave crest segment 210) and the wave trough (i.e. the wave trough segment 220) of the curved surface plate, which is relatively flat and the small suction cups can be firmly attached. Then, a rod (i.e. the mounting 121) made of a material with high rigidity is inserted through the handle (i.e. the handle part 112) of the small suction cup, and the deformation amount of the rod can be calculated by simulation, and the rod can be thickened or reinforced according to requirements to ensure that the small suction cups are relatively uniformly stressed, so that the final load test result meets the standard. Then, a plate (i.e. the suction plate 122) made of a material with high rigidity is placed above the small suction cups, and the plate and the rod are connected by a channel-shaped rod (i.e. the fixing part 125), one side of which is designed with a screw hole (i.e. a threaded hole), and the whole device is locked by a screw (i.e. the locking part 127). Then, a laboratory load test suction cup (i.e. the second suction accessory 130) is attached to the flat plate for load resistance test.

[0087] In another possible embodiment, as Figure 1 , Figure 2 and Figure 3As shown in the figure, the load testing tool (i.e. detection device 100) comprises a flat plate (i.e. adsorption plate 122), a grooved rod (i.e. fixing part 125) and a rod (i.e. mounting part 121), the flat plate and the rod are fixed by the grooved rod and fastened by a screw (i.e. locking part 127) to press the flat plate down and lock the object to be fixed with the rod.

[0088] As shown in the figure, the junction (i.e. connecting section 230) between the wave crest (i.e. wave crest section 210) and the wave trough (i.e. wave trough section 220) of the curved plate (i.e. curved part 200) is relatively flat, and a small suction cup (i.e. first suction part 110) can be adsorbed in this area, and the curved plate is fixed on the purlin (i.e. support part 140) by a screw during the test installation, and the small suction cup is adsorbed on the curved plate, and the number of small suction cups is determined according to the test load. Figure 4 Figure 5 As shown in the figure, the junction (i.e. connecting section 230) between the wave crest (i.e. wave crest section 210) and the wave trough (i.e. wave trough section 220) of the curved plate (i.e. curved part 200) is relatively flat, and a small suction cup (i.e. first suction part 110) can be adsorbed in this area, and the curved plate is fixed on the purlin (i.e. support part 140) by a screw during the test installation, and the small suction cup is adsorbed on the curved plate, and the number of small suction cups is determined according to the test load.

[0089] As shown in the figure, the junction (i.e. connecting section 230) between the wave crest (i.e. wave crest section 210) and the wave trough (i.e. wave trough section 220) of the curved plate (i.e. curved part 200) is relatively flat, and a small suction cup (i.e. first suction part 110) can be adsorbed in this area, and the curved plate is fixed on the purlin (i.e. support part 140) by a screw during the test installation, and the small suction cup is adsorbed on the curved plate, and the number of small suction cups is determined according to the test load. Figure 6 Figure 7 As shown in the figure, the junction (i.e. connecting section 230) between the wave crest (i.e. wave crest section 210) and the wave trough (i.e. wave trough section 220) of the curved plate (i.e. curved part 200) is relatively flat, and a small suction cup (i.e. first suction part 110) can be adsorbed in this area, and the curved plate is fixed on the purlin (i.e. support part 140) by a screw during the test installation, and the small suction cup is adsorbed on the curved plate, and the number of small suction cups is determined according to the test load.

[0090] As shown in the figure, the junction (i.e. connecting section 230) between the wave crest (i.e. wave crest section 210) and the wave trough (i.e. wave trough section 220) of the curved plate (i.e. curved part 200) is relatively flat, and a small suction cup (i.e. first suction part 110) can be adsorbed in this area, and the curved plate is fixed on the purlin (i.e. support part 140) by a screw during the test installation, and the small suction cup is adsorbed on the curved plate, and the number of small suction cups is determined according to the test load. Figure 8 As shown in the figure, the junction (i.e. connecting section 230) between the wave crest (i.e. wave crest section 210) and the wave trough (i.e. wave trough section 220) of the curved plate (i.e. curved part 200) is relatively flat, and a small suction cup (i.e. first suction part 110) can be adsorbed in this area, and the curved plate is fixed on the purlin (i.e. support part 140) by a screw during the test installation, and the small suction cup is adsorbed on the curved plate, and the number of small suction cups is determined according to the test load.

[0091] In the description of the present application, the terms "one embodiment", "some embodiments", "a specific embodiment", etc. mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0092] In the description of the present application, the terms "one embodiment", "some embodiments", "a specific embodiment", etc. mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0093] ​​The above merely describes preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A detection device, characterized in that, The detection device is used for load detection of a curved component, the curved component has at least one wave crest section, at least one wave trough section, and at least one connecting section, the wave crest section is arranged adjacent to the wave trough section, and the connecting section is used for connecting the adjacent wave crest section and wave trough section, and the detection device comprises: a plurality of first suction members capable of being adsorbed to the connecting section; a mounting assembly capable of being detachably connected with the first suction members, the mounting assembly has a suction surface, at least a part of the suction surface is a plane; at least one second suction member capable of being adsorbed on the suction surface, and an adsorption area of the first suction member is smaller than an adsorption area of the second suction member.

2. The detection device of claim 1, wherein, The mounting assembly comprises: at least one mounting member detachably connected with the first suction members; a suction plate, the suction surface is arranged on the suction plate; a fixing assembly used for connecting the mounting member with the suction plate.

3. The detection device of claim 2, wherein, Any one of the first suction members comprises: a suction part capable of being adsorbed to the connecting section; a handle part connected to the suction part, the mounting member can pass through the handle part, in the case that the first suction member is connected with the mounting assembly, a part of the handle part is located between the mounting member and the suction plate, and the fixing assembly can adjust the distance between the mounting member and the suction plate, so that the mounting member and the suction plate clamp the handle part.

4. The detection device according to claim 2, wherein: the number of the fixing assemblies is at least two, the at least two fixing assemblies are respectively arranged at two ends of the suction plate and the mounting member, and any one of the fixing assemblies comprises: a fixing part having a mounting slot, the end of the mounting member and the suction plate is inserted into the mounting slot; a plurality of locking members movably arranged on the fixing part, the locking members pass through the slot wall of the mounting slot and abut against the suction plate, and the locking members can move relative to the fixing part in the height direction of the fixing part, so as to adjust the distance between the mounting member and the suction plate.

5. The detection device according to claim 4, wherein: the locking members are screws, the fixing part is provided with threaded holes matched with the locking members, and the locking members pass through the threaded holes and abut against the suction plate.

6. The detection device according to claim 2, wherein: the plurality of first suction members can be arranged in sequence along the length direction of the curved component to form a first suction member group, in the case that the number of the first suction member group and the number of the mounting members are both plural, the plurality of first suction member groups can be arranged in sequence along the width direction of the curved component, the plurality of mounting members are arranged in one-to-one correspondence with the plurality of first suction member groups, and any one of the mounting members passes through the plurality of first suction members in the corresponding first suction member group.

7. The detection device according to any one of claims 1 to 6, characterized in that, Further comprising: a support member capable of being arranged on the side of the curved component away from the first suction members, and the support member is used for supporting the curved component.

8. The detection device according to claim 7, wherein: The support member can be connected to the valley section.

9. The detection device according to any one of claims 2 to 6, wherein In a case where the number of the second suction members is plural, the plural second suction members are disposed symmetrically with respect to an axis of the suction plate.

10. A detection device, characterized by Comprising: The detection device according to any one of claims 1 to 9.